Abstract Potassium-ion hybrid capacitors (PIHCs) rec-oncile the advantages of batteries and supercapacitors, exhibiting both good energy density and high-power den-sity. However, the
As a proof of concept, a potassium-ion capacitor assembled using this carbon anode yields a high energy density of 107 Wh kg-1, a maximum power density of 18.3 kW kg-1, and ultra-long
mers with an alternation of phosphorous and nitrogen atoms9,10 with different chemical structures and functionalities and can be used as precursors to prepare carbon
Luan Y, Hu R, Fang Y, et al. Nitrogen and phosphorus dual-doped multilayer graphene as universal anode for full carbon-based lithium and potassium ion capacitors. Nano
The organic xerogel was synthesized from the polymerization reaction of a kind of amino acid, tyrosine, and pyrrole-2-carbaldehyde using phosphoric acid as the catalyst and phosphorus source. Nitrogen (N) and
Herein, a novel N, P co-doped eave-like hierarchical porous carbon (NP-EHPC) for CDI is reported. To prepare the NP-EHPC, the core–shell ZIF-8@AF particles are first prepared
Herein, a phosphorus and nitrogen co-doped carbon material (PNC) with a wide layer spacing (0.381 nm) and high content of phosphorus (1.27 at%) and nitrogen (6.37 at%) was synthesized with non-toxic pyrrole and phytic acid as the
In particular, nitrogen-phosphorus co-doped porous carbon (N/P–C) has received much attention in the past few years. (SCs), metal-ion hybrid capacitors (HC), metal-ion
Herein, polypyrrole-coated nitrogen and phosphorus co-doped hollow carbon nanospheres (NPHCS@PPy) were synthesized by a facile method and employed as anode
We developed a CaCO3-assistant technique for the fabrication of nitrogen/phosphorus codoped hierarchical porous carbons.
Herein, polypyrrole-coated nitrogen and phosphorus co-doped hollow carbon nanospheres (NPHCS@PPy) were synthesized by a facile method and employed as anode
Nitrogen and phosphorus co-doped carbon hollow spheres derived from polypyrrole for high-performance supercapacitor electrodes. Author links open overlay panel
It is a challenge to achieve the high power/energy densities of portable and flexible energy storage devices. Here, an advanced lithium-ion capacitor (LIC) and sodium-ion
Heteroatoms doped porous carbon materials exhibit enormous potentiality in the field of energy storage field. Herein, we developed a facile strategy for preparing
This article discusses the development of a two-dimensional nitrogen and phosphorus co-doped mesoporous carbon-graphene nanosheets anode for high-performance
Herein, we use an easy and low-cost hydrothermal method to create a 3D nitrogen and phosphorus co-doped holey rGO (NPHG) aerogel. In a half-cell system, NPHG delivers a
Polypyrrole-Coated Nitrogen and Phosphorus Co-Doped Hollow Carbon Nanospheres for Lithium-Ion Capacitors. Front. Chem. 9:760473. doi: 10.3389/fchem.2021.760473 Frontiers in
Carbon, phosphorus or nitrogen-doped carbon and nitrogen, and phosphorus co-doped carbon materials were successfully synthesized. The scanning electron microscopy
In this work we have fabricated the nitrogen and phosphorus co-doped microporous derived carbon for supercapacitor application. The reason why biomass derived carbon materials can show excellent capacitance
Rich-phosphorus/nitrogen co-doped carbon for boosting the kinetics of potassium-ion hybrid capacitors†. Zhenyu Xie a, Jiannian Xia ab, Daping Qiu a, Jinying Wei ab, Min Li a, Feng
Herein, we report co-doped porous carbon with nitrogen-phosphorous derived from cross-linked polyvinyl alcohol and polyvinylpyrrolidone (AC-PA/PP/AP-x) polymers
Herein, the porous nitrogen-and-phosphorus co-doped carbon material are prepared using the O2-NH3 reactive pyrolysis of cellulose with the additional phosphating
Request PDF | On Sep 1, 2023, Suaad A. Alomari and others published Nitrogen, Phosphorus co-doped holey rGO as a cathode material for Li-ion capacitors (LICs) | Find, read and cite all the
In this study, we developed a carbon-coated phosphorus‑nitrogen co-doped microcrystalline graphite by acid-base neutralization. The double doping provides more active
Here, we describe a mesoporous carbon foam co-doped with nitrogen and phosphorus that has a large surface area of ∼1,663 m(2) g(-1) and good electrocatalytic
Nitrogen and phosphorous dual-doped carbon nanotubes (N,P/CNT) have been grown in a single-step direct synthesis process by CVD method using iron-loaded mesoporous
In our work, nitrogen (N)/phosphorus (P) co-doped ultramicropores (≈0.5 nm) hard carbon spheres (NPUCS) with the boosted pyridinic-N content are successfully prepared.
As compared with the pristine carbon obtained by the direct pyrolysis of cellulose, the capacity of nitrogen-and-phosphorus co-doped carbon rises from 140 to 253 mAh g −1,
Here we adopt a facile strategy for bifunctional catalysts with controllable modulation of the structure and composition of Co 2 P with enhanced electrocatalytic activity.
However, the low-rate performance and poor cycle stability of battery-type anodes hinder their practical application. Herein, phosphorus/nitrogen co-doped hollow carbon
Request PDF | One-step green synthesis of nitrogen and phosphorus co-doped pitch-based porous graphene-like carbon for supercapacitors | Using coal tar pitch (CTP), a
Two-dimensional nitrogen and phosphorus co-doped mesoporous carbon-graphene nanosheets anode for high-performance potassium-ion capacitor April 2023 Energy Materials
The phosphorus (P) and nitrogen (N) co-doped graphene (PNG) electrode materials are prepared by a one-step hydrothermal method and look like tremella with bent and wrinkled structures, which facilitates the construction of a
Here, we report a facile preparation of nitrogen and phosphorus heteroatoms co‐doped hierarchically porous and cross‐linked SiO x /C composite nanosheet architectures
We demonstrate a facile and effective approach to prepare nitrogen/phosphorus co-doped porous carbon materials by means of carbonizing cyclomatrix polyphosphazene, which is synthesized
The development of high-performance electrode materials is one of the effective strategies to enable Li-ion capacitors (LICs) to achieve a high energy density at a high power density. Herein, we present the preparation of
Herein, the porous nitrogen-and-phosphorus co-doped carbon material are prepared using the O 2 3 −1 −1 at 20 A g −1 ). Under the guidance of theoretical simulation, the enhancement of potassium storage capacity and kinetics is explored by combining spectral characterization and electrochemical research.
Porous nitrogen-and-phosphorus co-doped hard carbon materials are prepared using the reactive pyrolysis of cellulose. The nitrogen-and-phosphorus co-doped carbon demonstrates high capacity and rate performances. The nitrogen-and-phosphorus co-doping is proposed to improve the potassium storage performance of hard carbon materials.
Nitrogen and phosphorus co-doped cubic ordered mesoporous carbon as a supercapacitor electrode material with extraordinary cyclic stability. J Mater Chem A, 2015, 3: 18001–18009
An LIC fabricated with the carbon nanosphere anode and an activated carbon cathode yields a high energy density of 103 W h kg −1, an extremely high power density of 44,630 W kg −1, and long-term cyclability of over 10,000 cycles.
Electrochim Acta, 2020, 359: 136898 Luan Y, Hu R, Fang Y, et al. Nitrogen and phosphorus dual-doped multilayer graphene as universal anode for full carbon-based lithium and potassium ion capacitors.
New Carbon Mater, 2021, 36: 253–277 Ajuria J, Redondo E, Arnaiz M, et al. Lithium and sodium ion capacitors with high energy and power densities based on carbons from recycled olive pits.
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